6-Methoxy-8-quinolylamine: A Key Pharmaceutical Intermediate for Antimalarial Drug Synthesis
Discover the critical role of 6-Methoxy-8-quinolylamine in creating life-saving antimalarial treatments.
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6-Methoxy-8-quinolylamine
6-Methoxy-8-quinolylamine (CAS 90-52-8) is a high-quality chemical compound essential for the pharmaceutical industry. With a stringent assay of 99% minimum, it serves as a crucial pharmaceutical intermediate, primarily in the synthesis of vital antimalarial drugs. Its reliable quality and availability support the advancement of drug development and manufacturing processes.
- As a key 6-methoxy-8-quinolylamine pharmaceutical intermediate, this compound plays a critical role in the synthesis of important antimalarial drugs.
- High purity 6-methoxy-8-quinolylamine ensures the efficacy and safety of the final pharmaceutical products.
- The chemical synthesis process leverages this compound to create effective treatments for malaria.
- Understand the chemical uses of CAS 90-52-8 to explore its broader applications in pharmaceutical research and development.
Advantages Provided by the Product
Uncompromised Purity
Achieve superior results with our high purity 6-methoxy-8-quinolylamine, guaranteeing a minimum assay of 99% for your critical pharmaceutical applications.
Essential for Antimalarial Drug Synthesis
Leverage this compound as a primaquine phosphate precursor, streamlining your antimalarial drug synthesis processes and ensuring product integrity.
Reliable Chemical Intermediate
Utilize a trusted pharmaceutical raw intermediate that meets rigorous quality standards, facilitating consistent production outcomes.
Key Applications
Pharmaceutical Intermediates
This compound is a fundamental building block in the pharmaceutical intermediate supply chain, essential for creating advanced medicinal compounds.
Antimalarial Drug Manufacturing
Crucial for the antimalarial drug synthesis, this intermediate directly contributes to the production of medications combating malaria.
Chemical Synthesis Processes
Its specific properties make it a valuable reagent in various chemical synthesis pathways within the pharmaceutical research sector.
API Precursor Research
Supports research and development efforts by acting as a reliable API precursor for novel drug discovery and formulation.
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